52 Publications (Page 2 of 3)
2019
1D thermal characterization of micro/nano-cantilevers for Suspended ThermoReflectance measurements⋅Brady, Jeffrey⋅Baboly, M G⋅Singh, Gurpreet and Leseman, Z CAIP Advances, vol. 9, (no. 8), Aug 2019.
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Electrode Materials for High-Performance Sodium-Ion BatteriesMukherjee, Santanu⋅Soares, Davi and Singh, GurpreetMaterials, vol. 12, (no. 12), Feb 2019.
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Exfoliated transition metal dichalcogenide nanosheets for supercapacitor and sodium ion battery applications.Mukherjee, Santanu⋅Turnley, Jonathan⋅Mansfield, Elisabeth⋅Holm, Jason⋅Soares, Davi⋅David, Lamuel and Singh, GurpreetRoyal Society open science, vol. 6, (no. 8), pp. 190437, August 2019.
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2018
Beyond Graphene Anode Materials for Emerging Metal Ion Batteries and Supercapacitors.Mukherjee, Santanu⋅Ren, Zhongkan and Singh, GurpreetNano-micro letters, vol. 10, (no. 4), pp. 70, 2018.
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Molecular polymer-derived ceramics for applications in electrochemical energy storage devicesMukherjee, Santanu⋅Ren, Zhongkan and Singh, GurpreetJournal of physics. D, Applied physics, vol. 51, (no. 46), pp. 463001, 2018-11-21.
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2016
Silicon oxycarbide glass-graphene composite paper electrode for long-cycle lithium-ion batteriesDavid, Lamuel⋅Bhandavat, Romil⋅Barrera, Uriel and Singh, GurpreetNature Communications, vol. 7, pp. 10998, Mar 2016.
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2015
Facile Synthesis and High Rate Capability of Silicon Carbonitride/Boron Nitride Composite with a Sheet-Like MorphologyDavid, Lamuel⋅Bernard, Samuel⋅Gervais, Christel⋅Miele, Philippe and Singh, GurpreetJournal of physical chemistry. C, vol. 119, (no. 5), pp. 2791, 2015-02-05.
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Polymer-Derived Ceramic Functionalized MoS2 Composite Paper as a Stable Lithium-Ion Battery Electrode.David, L⋅Bhandavat, R⋅Barrera, U and Singh, GScientific reports, vol. 5, pp. 9792, 2015.
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2014
MoS2/graphene composite paper for sodium-ion battery electrodes.David, Lamuel⋅Bhandavat, Romil and Singh, GurpreetACS nano, vol. 8, (no. 2), pp. 1759-70, 2014/Feb/25.
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Reduced Graphene Oxide Paper Electrode: Opposing Effect of Thermal Annealing on Li and Na CyclabilityDavid, Lamuel and Singh, GurpreetJournal of physical chemistry. C, vol. 118, (no. 49), pp. 28408, 2014-12-11.
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Synthesis and extreme rate capability of Si-Al-C-N functionalized carbon nanotube spray-on coatings as Li-ion battery electrode.David, Lamuel⋅Asok, Deepu and Singh, GurpreetACS applied materials & interfaces, vol. 6, (no. 18), pp. 16056-16064, September 24, 2014.
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2013
Synthesis of graphene films by rapid heating and quenching at ambient pressures and their electrochemical characterization.David, L⋅Bhandavat, R⋅Kulkarni, G⋅Pahwa, S⋅Zhong, Zhaohui and Singh, GACS applied materials & interfaces, vol. 5, (no. 3), pp. 546-52, 2013/Feb.
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Very high laser-damage threshold of polymer-derived Si(B)CN-carbon nanotube composite coatings.Bhandavat, R⋅Feldman, A⋅Cromer, C⋅Lehman, J and Singh, GACS applied materials & interfaces, vol. 5, (no. 7), pp. 2354-2359, April 10, 2013.
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2012
Improved electrochemical capacity of precursor-derived Si(B)CN-carbon nanotube composite as Li-ion battery anode.Bhandavat, R and Singh, GACS applied materials & interfaces, vol. 4, (no. 10), pp. 5092-5097, October 24, 2012.
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Optical Trapping in Air of an Individual Nanotube-Sphere DeviceSingh, Gurpreet⋅Slifka, Andrew⋅Rice, Paul⋅Lauria, Damian and Mahajan, Roop LApplied physics express, vol. 5, (no. 9), pp. 095001-3, 2012-09-01.
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Synthesis, Characterization, and High Temperature Stability of Si(B)CN-Coated Carbon Nanotubes Using a Boron-Modified Poly(ureamethylvinyl)Silazane ChemistryBhandavat, Romil and Singh, GurpreetAmerican Ceramic Society. Journal of the American Ceramic Society, vol. 95, (no. 5), May 2012.
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Synthesis of polymer-derived ceramic Si(B)CN-carbon nanotube composite by microwave-induced interfacial polarization.Bhandavat, R⋅Kuhn, Bill⋅Mansfield, E⋅Lehman, J and Singh, GACS applied materials & interfaces, vol. 4, (no. 1), pp. 11-6, 2012/Jan.
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2010
In vitro and in vivo studies of single-walled carbon nanohorns with encapsulated metallofullerenes and exohedrally functionalized quantum dots.Zhang, Jianfei⋅Ge, Jiechao⋅Shultz, Michael D⋅Chung, Eunna⋅Singh, Gurpreet⋅Shu, Chunying⋅Fatouros, Panos⋅Henderson, Scott C⋅Corwin, Frank D⋅Geohegan, Dave⋅Puretzky, Alex⋅Rouleau, Chris⋅More, Karren⋅Rylander, Christopher⋅Rylander, Marissa N⋅Gibson, Harry W and Dorn, Harry CNano letters, vol. 10, (no. 8), pp. 2843-8, 2010/Aug/11.
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Observations of Nanobubble Formation on Carbon NanotubesSlifka, Andrew J⋅Singh, Gurpreet⋅Lauria, Damian S⋅Rice, Paul and Mahajan, Roop LApplied physics express, vol. 3, (no. 6), pp. 065103-3, 2010-06-00.
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2009
Microsystem for nanofiber electromechanical measurementsBrown, Joseph J⋅Suk, Ji W⋅Singh, Gurpreet⋅Baca, Alicia I⋅Dikin, Dmitriy A⋅Ruoff, Rodney S and Bright, Victor MSensors and Actuators, A: Physical, vol. 155, (no. 1), pp. 1-7, 2009.
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2008
Analyzing quantitative light scattering spectra of phantoms measured with optical coherence tomographyDennis, Tasshi⋅Dyer, Shellee D⋅Dienstfrey, Andrew⋅Singh, Gurpreet and Rice, PaulJournal of Biomedical Optics, vol. 13, (no. 2), 2008.
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2007
Fabrication and mechanical characterization of a force sensor based on an individual carbon nanotubeSingh, Gurpreet⋅Rice, P. and Mahajan, R. LNanotechnology, vol. 18, (no. 47), pp. 475501 (5pp), 2007.
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Nanodevices for applications in life sciences and engineering; Fabrication and mechanical characterization (Dissertation)Singh, Gurpreet (2007).
Nanodevices for applications in life sciences and engineering; Fabrication and mechanical characterization. (Dissertation)Singh, Gurpreet (2007).
Nanodevices for applications in life sciences and engineering; Fabrication and mechanical characterization.Singh, GurpreetDissertation Abstracts International. Vol. 68, vol. 68, (no. 11), pp. 151 p., 2007.
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